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细胞内钙离子对心脏钾通道表达及活性的影响:基因改造小鼠带来的新见解

The effects of intracellular Ca2+ on cardiac K+ channel expression and activity: novel insights from genetically altered mice.

作者信息

Xu Yanfang, Zhang Zhao, Timofeyev Valeriy, Sharma Dipika, Xu Danyan, Tuteja Dipika, Dong Pei Hong, Ahmmed Gias Uddin, Ji Yong, Shull Gary E, Periasamy Muthu, Chiamvimonvat Nipavan

机构信息

Division of Cardiovascular Medicine, Genome and Biomedical Sciences Facility, University of California-Davis, Rm 6315, 451 East Health Sciences Drive, Davis, CA 95616, USA.

出版信息

J Physiol. 2005 Feb 1;562(Pt 3):745-58. doi: 10.1113/jphysiol.2004.076216. Epub 2004 Nov 25.

Abstract

We tested the hypothesis that chronic changes in intracellular Ca(2+) (Ca(2+)(i)) can result in changes in ion channel expression; this represents a novel mechanism of crosstalk between changes in Ca(2+) cycling proteins and the cardiac action potential (AP) profile. We used a transgenic mouse with cardiac-specific overexpression of sarcoplasmic reticulum Ca(2+) ATPase (SERCA) isoform 1a (SERCA1a OE) with a significant alteration of SERCA protein levels without cardiac hypertrophy or failure. Here, we report significant changes in the expression of a transient outward K(+) current (I(to,f)), a slowly inactivating K(+) current (I(K,slow)) and the steady state current (I(SS)) in the transgenic mice with resultant prolongation in cardiac action potential duration (APD) compared with the wild-type littermates. In addition, there was a significant prolongation of the QT interval on surface electrocardiograms in SERCA1a OE mice. The electrophysiological changes, which correlated with changes in Ca(2+)(i), were further corroborated by measuring the levels of ion channel protein expression. To recapitulate the in vivo experiments, the effects of changes in Ca(2+)(i) on ion channel expression were further tested in cultured adult and neonatal mouse cardiac myocytes. We conclude that a primary defect in Ca(2+) handling proteins without cardiac hypertrophy or failure may produce profound changes in K(+) channel expression and activity as well as cardiac AP.

摘要

我们验证了以下假设

细胞内钙离子(Ca(2+)(i))的慢性变化可导致离子通道表达的改变;这代表了钙离子循环蛋白变化与心脏动作电位(AP)特征之间相互作用的一种新机制。我们使用了一种转基因小鼠,其心脏特异性过表达肌浆网Ca(2+) ATP酶(SERCA)同工型1a(SERCA1a OE),SERCA蛋白水平有显著改变,但无心脏肥大或衰竭。在此,我们报告,与野生型同窝小鼠相比,转基因小鼠中瞬时外向钾电流(I(to,f))、缓慢失活钾电流(I(K,slow))和稳态电流(I(SS))的表达有显著变化,导致心脏动作电位时程(APD)延长。此外,SERCA1a OE小鼠体表心电图的QT间期显著延长。通过测量离子通道蛋白表达水平,进一步证实了与Ca(2+)(i)变化相关的电生理变化。为了重现体内实验,在培养的成年和新生小鼠心肌细胞中进一步测试了Ca(2+)(i)变化对离子通道表达的影响。我们得出结论,在无心脏肥大或衰竭的情况下,Ca(2+)处理蛋白的原发性缺陷可能会导致钾通道表达和活性以及心脏动作电位发生深刻变化。

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